Cloud formation of particles containing humic-like substances

被引:45
作者
Kokkola, H
Sorjamaa, R
Peraniemi, A
Raatikainen, T
Laaksonen, A
机构
[1] Finnish Meteorol Inst, Kuopio Unit, FIN-70211 Kuopio, Finland
[2] Univ Kuopio, Dept Appl Phys, FIN-70211 Kuopio, Finland
关键词
D O I
10.1029/2006GL026107
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Humic like substances (HULIS) are a class of compounds that are suspected to have an effect on cloud droplet activation properties of atmospheric aerosols because they decrease the surface tension of aqueous solutions quite efficiently. Surface active organic compounds have a tendency of concentrating on the surfaces of liquid droplets. If the total amount of surface active compound is small enough, partitioning of the substance on the surface depletes it from the droplet interior, decreasing the Raoult effect and increasing the Kelvin effect. Thus, the surface partitioning causes an increase of the critical supersaturation (Kohler curve maximum), and the effect gets stronger with decreasing size of the cloud condensation nucleus. In this study, the effects of HULIS on the activation of cloud droplets was studied by cloud parcel model calculations. Model results indicate that if the surface partitioning is not taken into account, the number of activated droplets can be highly overestimated. The simulations were made using particles containing 10 - 80% mass fraction of HULIS, while the remaining fraction of the particle was ammonium sulfate. The calculations indicated that the surface tension effects of humic-like compounds on the cloud activation become significant only when the weight fraction of the organics is very high. In contrast, if the surface partitioning is not taken into account, already a small weight fraction of organics will lead to significant increase in number of cloud droplets.
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页数:5
相关论文
共 19 条
[1]  
[Anonymous], ATMOS CHEM PHYS DISC
[2]  
[Anonymous], 2005, Atmos. Chem. and Phys
[3]   Atmospheric science - Reshaping the theory of cloud formation [J].
Charlson, RJ ;
Seinfeld, JH ;
Nenes, A ;
Kulmala, M ;
Laaksonen, A ;
Facchini, MC .
SCIENCE, 2001, 292 (5524) :2025-2026
[4]   Kinetic limitations on droplet formation in clouds [J].
Chuang, PY ;
Charlson, RJ ;
Seinfeld, JH .
NATURE, 1997, 390 (6660) :594-596
[5]   Cloud albedo enhancement by surface-active organic solutes in growing droplets [J].
Facchini, MC ;
Mircea, M ;
Fuzzi, S ;
Charlson, RJ .
NATURE, 1999, 401 (6750) :257-259
[6]   Studying the effects of calcium and magnesium on size-distributed nitrate and ammonium with EQUISOLV II [J].
Jacobson, MZ .
ATMOSPHERIC ENVIRONMENT, 1999, 33 (22) :3635-3649
[7]   Estimation of the average molecular weight of humic-like substances isolated from fine atmospheric aerosol [J].
Kiss, G ;
Tombácz, E ;
Varga, B ;
Alsberg, T ;
Persson, L .
ATMOSPHERIC ENVIRONMENT, 2003, 37 (27) :3783-3794
[8]   Surface tension effects of humic-like substances in the aqueous extract of tropospheric fine aerosol [J].
Kiss, G ;
Tombácz, E ;
Hansson, HC .
JOURNAL OF ATMOSPHERIC CHEMISTRY, 2005, 50 (03) :279-294
[9]   Kohler theory for a polydisperse droplet population in the presence of a soluble trace gas, and an application to stratospheric STS droplet growth [J].
Kokkola, H ;
Romakkaniemi, S ;
Laaksonen, A .
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2003, 3 :2139-2146
[10]   Formation and growth rates of ultrafine atmospheric particles:: a review of observations [J].
Kulmala, M ;
Vehkamäki, H ;
Petäjä, T ;
Dal Maso, M ;
Lauri, A ;
Kerminen, VM ;
Birmili, W ;
McMurry, PH .
JOURNAL OF AEROSOL SCIENCE, 2004, 35 (02) :143-176